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This volume contains review articles and original results obtained in various fields of modern science using mathematical simulation methods. The basis of the articles are the plenary and some section reports that were made and discussed at the Fourth International Mathematical Simulation Conference, held in Moscow on June 27 through July 1, 2000. The conference was devoted to the following scientific areas: • mathematical and computer discrete systems models; • non-linear excitation in condensed media; • complex systems evolution; • mathematical models in economics; • non-equilibrium processes kinematics; • dynamics and structure of the molecular and biomolecular systems; • mathematical transfer models in non-linear systems; • numerical simulation and algorithms; • turbulence and determined chaos; • chemical physics of polymer. This conference was supported by the Russian Ministry of Education, Russian foundation for Basic Research and Federal Program "Integration". This volume contains the following sections: 1. models of non-linear phenomena in physics; 2. numerical methods and computer simulations; 3. mathematical computer models of discrete systems; 4. mathematical models in economics; 5. non-linear models in chemical physics and physical chemistry; 6. mathematical models of transport processes in complex systems. In Sections One and Five a number of fundamental and sufficiently general problems, concerning real physical and physical-chemical systems simulation, is discussed.
This timely handbook contains chapters on the essential elements of high resolution charged particle optics and is written by many of the world's leading research scientists. It is a complete guide to understanding, designing, and using high resolution instrumentation such as transmission electron microscopes (TEMs), scanning electron microscopes (SEMs), scanning transmission electron microscopes (STEMs), and focused ion beam (FIB) systems. This handbook is evenly balanced between theory and application, and covers all the most important topics in this growing area. Handbook of High Resolution Charged Particle Optics explains how and why high resolution instruments work and how to apply this information when designing or using them.
Flat-panel displays are rapidly becoming the displays of choice for a variety of information-displaying applications ranging from laptop computers to automobile and cockpit read-out devices. Passive matrix liquid-crystal displays, and more recently, active matrix liquid-crystal displays (AMLCDs) have led the way in the display revolution. In addition, emissive displays based on field emission, electroluminescence, and plasma charge are attracting considerable interest. Ultimately, however, the advancement in flat-panel display applications will be driven by cost and performance advantages which are dependent on the advancement of materials and process technologies used to fabricate the displays. This book focuses on the materials and large-area processes used by the various display technologies, both emissive and nonemissive, including liquid-crystal, electroluminescent, plasma, field-emission, and micromechanical displays. Topics include: AMLCD materials and processes; thin-film transistors for AMLCDs; emissive displays and materials and phosphor materials.